Deoxidizer High Efficiency Granulator
By using a rotary extrusion loading assembly and an automatic threshing and discharge mechanism in the deoxidant granulator, the problems of general granulation effect and low degree of automation in the prior art are solved, and efficient and automated deoxidant granulation are achieved.
Patent Information
- Application Number
- CN202310374794.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-10
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2043-04-10
AI Technical Summary
The granulation effect of existing deoxidant granulators is average, the granulation efficiency is not high enough, and there is room for improvement in the degree of automation.
The rotary extrusion loading assembly is used to rotate around the rotary segmented automatic discharge assembly, so that the deoxidant raw materials are fully attached and kept clean, and preliminary drying and blowing drying is achieved through the drying rack and the automatic threshing discharge mechanism, improving the degree of automation and granulation efficiency.
It realizes efficient and automated deoxidant granulation, with good granulation effect and high granulation efficiency, and avoids the generation of slag.
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Figure CN116617939B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of deoxidizer granulation, in particular to a high-efficiency deoxidizer granulator. Background Art
[0002] Deoxidizer, also known as deoxidizer and oxygen absorber, is an additive that can absorb oxygen and slow down the oxidation of food. It is a new product currently being used in food preservation. It is a group of chemical mixtures that easily react with free oxygen or dissolved oxygen. It is placed in a sealed paper bag with a certain air permeability and strength, just like a desiccant bag, and sealed and packaged together with food in a food bag. It can remove the oxygen remaining in the air in the bag to prevent food from discoloring, deteriorating and oil rancidity due to oxidation. It also has an inhibitory effect on the growth of mold, aerobic bacteria and grain pests. At present, deoxidizers are not only used to maintain food quality, but also for the preservation and rust prevention of grains, feed, medicines, clothing, fur, precision instruments and other items. The current deoxidizer granulation is usually achieved by a granulator.
[0003] In the Chinese patent application number CN201921180820.8, a novel granulator for deoxidizer production is proposed. A dumping mechanism is arranged at the bottom of the guide hopper. The electric push rod is energized to work and pushes the connecting block and the connecting rod to the front end, so that the connecting rod drives the first swing rod and the second swing rod to rotate around the first rotating rod and the second rotating rod respectively through the first fixed block and the second fixed block, so that the first swing rod and the second swing rod drive the guide hopper to tilt through the rotating shaft, so that the material inside the guide hopper is dumped into the feed hopper, thereby achieving the advantages of fast feeding and increased granulation efficiency.
[0004] In the Chinese patent application number CN202021593744.6, a granulator for deoxidizer production is proposed, in which an extrusion molding device is arranged inside a box body, and the material enters a conveying box in the box body through a feed hopper. A feed pipe arranged at the lower part of the feed hopper can control whether the material enters. A control device is arranged on the feed pipe. The rotating shaft and conveying screw in the conveying box are responsible for conveying the material to the baffle and play a certain stirring role. The baffle can separate the extrusion shaft and the rotating shaft, and can prevent the material from flowing back. The material passes through the extrusion shaft and the extrusion screw, and the material is The materials are discharged from the forming holes on the forming plate and then reach the cutter through the discharge pipe. The cutter is used to cut the materials. Since the cutter needs to cut the materials in multiple discharge pipes at the same time and the materials are squeezed in the discharge pipes, the materials are connected more tightly and are not easy to be torn apart. Compared with the existing granulator, there is no cutting device in the granulation process. The materials break after reaching a certain length according to their own conditions, which easily causes the materials to be of different lengths and sizes. The utility model can solve this problem very well. The utility model has the advantages of reasonable structure, good stability and high working efficiency.
[0005] However, the granulation methods proposed in the above two comparative documents are still simple improvements on the existing technology, the granulation effect is average, the granulation efficiency is not high enough, and there is room for improvement in the degree of automation.
[0006] In view of this, this application is filed. Summary of the invention
[0007] In order to overcome the technical defects of the prior art, the present invention provides a deoxidizer high-efficiency granulator, which rotates a rotary extrusion loading component around a rotary segmented processing type automatic discharging component, so that the deoxidizer raw material is fully attached to the rotary segmented processing type automatic discharging component, and the raw material is kept clean and tidy to avoid the generation of debris. The raw material particles in the rotary segmented processing type automatic discharging component are preliminarily dried by a drying rack, and the rotary segmented processing type automatic discharging component can be blown and dried by an automatic granulating and discharging mechanism, so that the deoxidizer particles in the rotary segmented processing type automatic discharging component fall off. The present invention has a high degree of automation, a good granulation effect, and a high granulation efficiency.
[0008] The technical solution adopted by the present invention is: it includes a deoxidizer high-efficiency granulator, including a raw material storage box, a rotating mounting seat, a rotating segmented processing type automatic discharging component, an automatic threshing and discharging mechanism, a drying rack, a rotating extrusion feeding component and a collecting box, a servo motor is installed on one side of the top of the raw material storage box, the rotating mounting seat is connected to the output shaft of the servo motor, the rotating segmented processing type automatic discharging component is fixedly arranged on the rotating mounting seat, the automatic threshing and discharging mechanism is fixedly installed on one side of the top of the raw material storage box, the drying rack and the rotating extrusion feeding component are both fixedly installed on the side wall of the raw material storage box, and the collecting box is connected to the automatic threshing and discharging mechanism.
[0009] Preferably, the number of the rotating segmented processing type automatic discharging components is six, and the six rotating segmented processing type automatic discharging components are evenly fixedly mounted on the rotating mounting seat in a circular array with the center point of the rotating mounting seat as the axis. Through the arrangement of the six rotating segmented processing type automatic discharging components, in actual use, each rotating segmented processing type automatic discharging component can perform segmented processing at the same time, that is, when the rotating segmented processing type automatic discharging component at the bottom is loading, the rotating segmented processing type automatic discharging component above is simultaneously performing threshing work, thereby maintaining a continuous and uninterrupted granulation process, with higher working efficiency and efficient granulation.
[0010] Preferably, the rotary segmented processing type automatic discharging assembly comprises a waterproof and sealed motor, a rotary drum and an air injection pipe, the waterproof and sealed motor is fixedly mounted on the side wall of the rotary mounting seat, the rotary drum is connected to the output shaft of the waterproof and sealed motor, the air injection pipe is arranged at one end of the rotary drum, a filling hole is opened on the outer wall of the rotary drum, a pneumatic telescopic rod is arranged in the filling hole, and the pneumatic telescopic rod is communicated with the inner cavity of the rotary drum. When the rotary segmented processing type automatic discharging assembly is actually used, the rotary drum can be driven to rotate by opening the waterproof and sealed motor, and the deoxidizer raw material is attached by utilizing the filling hole on the rotary drum. During threshing, the rotation of the rotary drum can make use of the centrifugal effect to better separate the formed deoxidizer particles. At the same time, the pneumatic telescopic rod can be extended when air is passed into the rotary drum to eject the raw material in the filling hole, so as to achieve further rapid threshing and better threshing effect.
[0011] Preferably, the rotary extrusion feeding assembly includes a driving motor, a connecting bracket and an arc plate, the driving motor is fixedly mounted on the inner wall of the raw material storage box, the connecting bracket is connected to the output shaft of the driving motor, and the arc plate is arranged at one end of the connecting bracket, and the connecting bracket is driven to rotate by turning on the driving motor, thereby driving the arc plate at one end of the connecting bracket to rotate. In actual use, the rotating cylinder used in the rotary segmented processing automatic discharging assembly is opened when it is located on one side of the arc plate, so that the arc plate rotates at a constant speed outside the rotating cylinder with the rotating cylinder as the center, so that the deoxidizer raw material attached to the outside of the rotating cylinder is evenly distributed, and the excess is scraped off by the arc plate, thereby achieving a uniform granulation effect.
[0012] Preferably, the automatic threshing and discharging mechanism comprises a fixed bracket, an upper bracket, a lower bracket and a discharging frame, the fixed bracket is welded on the top outer wall of the raw material storage box, the lower bracket is installed on one side of the raw material storage box through the fixed bracket, the upper bracket is welded on the top of the lower bracket, and the discharging frame is welded on the bottom of the lower bracket. The automatic threshing and discharging mechanism also includes a fan, a discharge chute is provided between the lower bracket and the discharging frame, the fan is installed at one end of the discharging frame, and one end of the discharging frame is connected to the collecting box. The gap between the upper bracket and the lower bracket is set so that the rotary segmented processing type automatic discharging assembly can pass through the automatic threshing and discharging mechanism in a movable manner, and the deoxidizer particles in the rotary segmented processing type automatic discharging assembly are separated between the upper bracket and the lower bracket, and then fall into the discharging frame at the bottom through the discharge chute. At this time, the formed deoxidizer raw materials can be blown into the collecting box for centralized storage by turning on the fan.
[0013] Preferably, the automatic threshing and discharging mechanism also includes an air pump and a jet belt, the air pump is fixedly mounted on the top of the upper bracket, there are two jet belts, the two jet belts are symmetrically arranged on the inner wall of the upper bracket, the jet belt is connected to the air pump, and in actual use, after the rotary segmented processing automatic discharging assembly enters the upper bracket and the lower bracket, the air pump can be turned on while the rotating drum rotates, so that the air pump inflates the jet belt, and the jet belt continuously blows air to the outer wall of the rotating drum, so that the deoxidizer particles on the outer wall of the rotating drum can be separated better and faster, and a certain drying effect is also achieved.
[0014] Preferably, the automatic threshing and discharging mechanism also includes an electric telescopic rod and an inflation seat, the electric telescopic rod is fixedly mounted on one side of the lower bracket, and the inflation seat is mounted on the telescopic end of the electric telescopic rod, and the position of the inflation seat is controlled by the electric telescopic rod. The inflation seat has a built-in air pump. During use, when the rotating segmented processing automatic discharging assembly enters between the upper bracket and the lower bracket for threshing, the electric telescopic rod can be controlled to extend, so that the inflation seat moves into the air injection pipe, and then the air injection pipe is inflated to increase the air pressure in the rotating cylinder, thereby pressing the pneumatic telescopic rod to push out the formed deoxidizer particles in the filler hole, thereby achieving faster and more complete discharging.
[0015] The beneficial effects of the present invention are as follows: the present invention rotates the rotary extrusion loading component around the rotary segmented processing type automatic discharging component, so that the deoxidizer raw material is fully attached to the rotary segmented processing type automatic discharging component, and the raw material is kept clean and tidy to avoid the generation of debris. The raw material particles in the rotary segmented processing type automatic discharging component are preliminarily dried by the drying rack, and the rotary segmented processing type automatic discharging component can be blown and dried by the automatic threshing and discharging mechanism, so that the deoxidizer particles in the rotary segmented processing type automatic discharging component fall off. The present invention has a high degree of automation, a good granulation effect, and a high granulation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the external structure of the present invention from the right side viewing angle.
[0017] Figure 2 It is a schematic diagram of the external structure of the present invention from the left side viewing angle.
[0018] Figure 3 It is a schematic diagram of the internal structure of the present invention.
[0019] Figure 4 It is a structural schematic diagram of the rotary segmented processing type automatic discharging component in the present invention.
[0020] Figure 5 It is a schematic diagram of the structure of the rotary extrusion feeding assembly in the present invention.
[0021] Figure 6 It is a schematic diagram of the structure of the automatic threshing and discharging mechanism of the present invention from a top view.
[0022] Figure 7 It is a schematic diagram of the structure of the automatic threshing and discharging mechanism of the present invention when viewed from above.
[0023] Explanation of the accompanying drawings: In the figure: 1. Raw material storage box; 2. Rotating mounting seat; 3. Rotating segmented processing automatic discharging assembly; 301. Waterproof sealing motor; 302. Rotating cylinder; 303. Filling hole; 304. Air injection pipe; 4. Automatic threshing and discharging mechanism; 401. Fixed bracket; 402. Upper bracket; 403. Lower bracket; 404. Discharging frame; 405. Discharging chute; 406. Fan; 407. Air pump; 408. Jet belt; 409. Electric telescopic rod; 4010. Inflating seat; 5. Drying rack; 6. Rotating extrusion feeding assembly; 601. Driving motor; 602. Connecting bracket; 603. Arc plate; 7. Collection box. DETAILED DESCRIPTION
[0024] The present invention will be further described below in conjunction with the accompanying drawings:
[0025] like Figure 1-Figure 7 shown. Example 1
[0026] The present embodiment provides a deoxidizer high-efficiency granulator, including a deoxidizer high-efficiency granulator, including a raw material storage box 1, a rotating mounting seat 2, a rotating segmented processing type automatic discharging component 3, an automatic threshing and discharging mechanism 4, a drying rack 5, a rotating extrusion feeding component 6 and a collecting box 7. A servo motor is installed on one side of the top of the raw material storage box 1, the rotating mounting seat 2 is connected to the output shaft of the servo motor, the rotating segmented processing type automatic discharging component 3 is fixedly arranged on the rotating mounting seat 2, the automatic threshing and discharging mechanism 4 is fixedly installed on one side of the top of the raw material storage box 1, the drying rack 5 and the rotating extrusion feeding component 6 are both fixedly installed on the side wall of the raw material storage box 1, and the collecting box 7 is connected to the automatic threshing and discharging mechanism 4.
[0027] In the present invention, a deoxidizer raw material is stored in a raw material storage box 1. The rotation of a servo motor drives the rotation of a rotary mounting base 2, thereby driving each rotary segmented processing type automatic discharging component 3 to rotate and move within the raw material storage box 1. The deoxidizer raw material in the raw material storage box 1 needs to be continuously added, but not in excessive amounts, so that after a single rotary segmented processing type automatic discharging component 3 rotates into the raw material storage box 1, it can adsorb the raw material, and then after rising to the top, it can dry and separate the deoxidizer raw material into particles. During specific granulation, the rotary segmented processing type automatic discharging component 3 rotates to the bottom along with the rotary mounting base 2. A rotary extrusion feeding component 6 rotates around the rotary segmented processing type automatic discharging component 3, enabling the deoxidizer raw material to fully adhere to the rotary segmented processing type automatic discharging component 3 and keeping the raw material clean to avoid the generation of debris. Then, the rotary segmented processing type automatic discharging component 3 continues to rotate and enters a drying rack 5. Through the drying rack 5, the raw material particles within the rotary segmented processing type automatic discharging component 3 are preliminarily dried, facilitating separation in an automatic grain discharging mechanism 4. When the rotary segmented processing type automatic discharging component 3 rises into the automatic grain discharging mechanism 4, on the one hand, the automatic grain discharging mechanism 4 can blow air for drying to the rotary segmented processing type automatic discharging component 3, causing the deoxidizer particles within the rotary segmented processing type automatic discharging component 3 to fall off. On the other hand, it can inflate the rotary segmented processing type automatic discharging component 3, enabling the deoxidizer particles within the rotary segmented processing type automatic discharging component 3 to be under an outward pressure inside, making the formed deoxidizer particles more smoothly discharged. The formed deoxidizer particles enter a collection box 7 through the automatic discharging mechanism and are concentrated, awaiting packaging in the next step.
[0028] Specifically, as Figure 4 shown, the number of the rotary segmented processing type automatic discharging components 3 is six. The six rotary segmented processing type automatic discharging components 3 are uniformly fixedly installed on the rotary mounting base 2 in an annular array with the center point of the rotary mounting base 2 as the axis. Through the arrangement of the six rotary segmented processing type automatic discharging components 3, during actual use, each rotary segmented processing type automatic discharging component 3 can simultaneously perform segmented processing. That is, when the rotary segmented processing type automatic discharging component 3 at the bottom is feeding, the rotary segmented processing type automatic discharging component 3 above simultaneously performs the grain discharging work, thereby maintaining a continuous granulation process with higher working efficiency and efficient granulation. Embodiment 2
[0029] The present embodiment provides a deoxidizer high-efficiency granulator, including a deoxidizer high-efficiency granulator, including a raw material storage box 1, a rotating mounting seat 2, a rotating segmented processing type automatic discharging component 3, an automatic threshing and discharging mechanism 4, a drying rack 5, a rotating extrusion feeding component 6 and a collecting box 7. A servo motor is installed on one side of the top of the raw material storage box 1, the rotating mounting seat 2 is connected to the output shaft of the servo motor, the rotating segmented processing type automatic discharging component 3 is fixedly arranged on the rotating mounting seat 2, the automatic threshing and discharging mechanism 4 is fixedly installed on one side of the top of the raw material storage box 1, the drying rack 5 and the rotating extrusion feeding component 6 are both fixedly installed on the side wall of the raw material storage box 1, and the collecting box 7 is connected to the automatic threshing and discharging mechanism 4.
[0030] This embodiment further embodies the structures of the rotary segmented processing automatic discharging component 3 and the rotary extrusion feeding component 6 on the basis of the embodiment 1. Figure 4 As shown, the rotary segmented processing type automatic discharge assembly 3 includes a waterproof sealed motor 301, a rotary cylinder 302 and an air injection pipe 304. The waterproof sealed motor 301 is fixedly mounted on the side wall of the rotary mounting seat 2. The rotary cylinder 302 is connected to the output shaft of the waterproof sealed motor 301. The air injection pipe 304 is arranged at one end of the rotary cylinder 302. A filling hole 303 is opened on the outer wall of the rotary cylinder 302. A pneumatic telescopic rod is arranged in the filling hole 303. The pneumatic telescopic rod is connected to the inner cavity of the rotary cylinder 302. When the processing type automatic discharging component 3 is actually used, the waterproof sealed motor 301 can be turned on to drive the rotating drum 302 to rotate, and the filling hole 303 on the rotating drum 302 is used to attach the deoxidizer raw material. During threshing, the rotating drum 302 rotates and the centrifugal effect can be used to make the formed deoxidizer particles better separated. At the same time, the pneumatic telescopic rod can be extended when air is passed into the rotating drum 302 to eject the raw material in the filling hole 303, thereby realizing further rapid threshing and better threshing effect.
[0031] Specific as Figure 5 As shown, the rotary extrusion feeding assembly 6 includes a driving motor 601, a connecting bracket 602 and an arc plate 603. The driving motor 601 is fixedly mounted on the inner wall of the raw material storage box 1, the connecting bracket 602 is connected to the output shaft of the driving motor 601, and the arc plate 603 is arranged at one end of the connecting bracket 602. The connecting bracket 602 is driven to rotate by opening the driving motor 601, thereby driving the arc plate 603 at one end of the connecting bracket 602 to rotate. In actual use, the rotating cylinder 302 in the rotating segmented processing automatic discharging assembly 3 is opened when it is located on one side of the arc plate 603, so that the arc plate 603 rotates at a uniform speed outside the rotating cylinder 302 with the rotating cylinder 302 as the center, so that the deoxidizer raw material attached to the outside of the rotating cylinder 302 is evenly distributed, and the excess is scraped off by the arc plate 603, thereby achieving a uniform granulation effect. Example 3
[0032] The present embodiment provides a deoxidizer high-efficiency granulator, including a deoxidizer high-efficiency granulator, including a raw material storage box 1, a rotating mounting seat 2, a rotating segmented processing type automatic discharging component 3, an automatic threshing and discharging mechanism 4, a drying rack 5, a rotating extrusion feeding component 6 and a collecting box 7. A servo motor is installed on one side of the top of the raw material storage box 1, the rotating mounting seat 2 is connected to the output shaft of the servo motor, the rotating segmented processing type automatic discharging component 3 is fixedly arranged on the rotating mounting seat 2, the automatic threshing and discharging mechanism 4 is fixedly installed on one side of the top of the raw material storage box 1, the drying rack 5 and the rotating extrusion feeding component 6 are both fixedly installed on the side wall of the raw material storage box 1, and the collecting box 7 is connected to the automatic threshing and discharging mechanism 4.
[0033] This embodiment further embodies the structure of the automatic threshing and discharging mechanism 4 on the basis of the embodiment 1. Figure 6 As shown, the automatic threshing and discharging mechanism 4 includes a fixed bracket 401, an upper bracket 402, a lower bracket 403 and a discharging frame 404. The fixed bracket 401 is welded to the top outer wall of the raw material storage box 1, and the lower bracket 403 is installed on one side of the raw material storage box 1 through the fixed bracket 401. The upper bracket 402 is welded to the top of the lower bracket 403, and the discharging frame 404 is welded to the bottom of the lower bracket 403. The automatic threshing and discharging mechanism 4 also includes a fan 406. A feed chute 405 is provided between the lower bracket 403 and the discharging frame 404. The fan 406 is installed at One end of the discharging frame 404 is connected to the collecting box 7, and the gap between the upper bracket 402 and the lower bracket 403 is set, so that the rotating segmented processing type automatic discharging component 3 can be moved through the automatic threshing and discharging mechanism 4, and the deoxidizer particles in the rotating segmented processing type automatic discharging component 3 are separated between the upper bracket 402 and the lower bracket 403, and then fall into the discharging frame 404 at the bottom through the discharge chute 405. At this time, the fan 406 can be turned on to blow the formed deoxidizer raw materials into the collecting box 7 for centralized storage.
[0034] Specific as Figure 7As shown, the automatic threshing and discharging mechanism 4 also includes an air pump 407 and an air jet belt 408. The air pump 407 is fixedly installed on the top of the upper bracket 402. There are two air jet belts 408. The two air jet belts 408 are symmetrically arranged on the inner wall of the upper bracket 402. The air jet belt 408 is connected to the air pump 407. In actual use, after the rotary segmented processing automatic discharging component 3 enters the upper bracket 402 and the lower bracket 403, the air pump 407 can be turned on while the rotating cylinder 302 rotates, so that the air pump 407 inflates the air into the air jet belt 408, and the air jet belt 408 continuously blows air to the outer wall of the rotating cylinder 302, so that the deoxidizer particles on the outer wall of the rotating cylinder 302 can be better and faster separated, and it also has a certain drying effect.
[0035] Specific as Figure 7 As shown, the automatic threshing and discharging mechanism 4 also includes an electric telescopic rod 409 and an inflation seat 4010. The electric telescopic rod 409 is fixedly mounted on one side of the lower bracket 403, and the inflation seat 4010 is mounted on the telescopic end of the electric telescopic rod 409. The position of the inflation seat 4010 is controlled by the electric telescopic rod 409. The inflation seat 4010 has a built-in air pump. During use, when the rotating segmented processing automatic discharging component 3 enters between the upper bracket 402 and the lower bracket 403 for threshing, the electric telescopic rod 409 can be controlled to extend, so that the inflation seat 4010 moves into the air injection pipe 304, and then the air injection pipe 304 is inflated to increase the air pressure in the rotating cylinder 302, thereby pressing the air pressure telescopic rod so that the air pressure telescopic rod pushes out the formed deoxidizer particles in the filling hole 303, thereby achieving faster and more complete discharging.
[0036] The deoxidizer is granulated by this granulator. The deoxidizer produced by the granulation process has no attenuation in the oxygen absorption performance, which is basically consistent with the oxygen absorption performance of the common deoxidizers on the market. The deoxidizer produced by the granulation process has a larger particle size and less powdered material in the package. The particles will not penetrate into the pore size of the membrane. For iron-based deoxidizer dioxygen, it can effectively reduce the risk of rust spots of the deoxidizer; for organic-based deoxidizer dioxygen, it can effectively reduce the risk of black spots of the deoxidizer.
[0037] Comparison of rust spots (for iron-based deoxidizer):
[0038] (1) At 8:00 a.m. on the first day, the rolls of deoxidizer were opened and exposed to the air.
[0039] (2) At 18:00 on the first day, observe and record the rust spots, seal the roll of deoxidizer and place it on its side.
[0040] (3) At 8:00 the next morning, open the roll of deoxidizer again and expose it to the air.
[0041] (4) At 18:00 the next day, observe and record the rust spots on the deoxidizer, seal the rolled deoxidizer again and place it on its side.
[0042] (5) At 8:00 am on the third day, unpack the rolled deoxidizer, remove several outer circles of deoxidizer, observe the appearance of rust spots inside and record them. End the test.
[0043]
[0044] Comparison of black spots on cakes (for organic deoxidizers).
[0045] (1) Package the deoxidizer together with the cake to be tested (10 packages per test).
[0046] (2) Place the sample in (1) in an environment of 36°C and 85% RH.
[0047] (2) Observe the black spots on the deoxidizer every 10 days.
[0048]
[0049] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only for illustrating the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which shall fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. Deoxidizer high efficiency granulator, Features: The invention comprises a raw material storage box (1), a rotating mounting seat (2), a rotating segment processing type automatic discharging component (3), an automatic threshing and discharging mechanism (4), a drying rack (5), a rotating extrusion feeding component (6) and a collecting box (7), wherein a servo motor is installed on one side of the top of the raw material storage box (1), the rotating mounting seat (2) is connected to the output shaft of the servo motor, the rotating segment processing type automatic discharging component (3) is fixedly arranged on the rotating mounting seat (2), the automatic threshing and discharging mechanism (4) is fixedly installed on one side of the top of the raw material storage box (1), the drying rack and the rotating extrusion feeding component (6) are both fixedly installed on the side wall of the raw material storage box (1), and the collecting box (7) is connected to the automatic threshing and discharging mechanism (4); The rotary segmented processing type automatic discharge assembly (3) comprises a waterproof sealed motor (301), a rotary drum (302) and an air injection pipe (304); the waterproof sealed motor (301) is fixedly mounted on the side wall of the rotary mounting seat (2); the rotary drum (302) is connected to the output shaft of the waterproof sealed motor (301); and the air injection pipe (304) is arranged at one end of the rotary drum (302); A filling hole (303) is provided on the outer wall of the rotating cylinder (302), a pneumatic telescopic rod is arranged in the filling hole (303), and the pneumatic telescopic rod is in communication with the inner cavity of the rotating cylinder (302); The rotary extrusion feeding assembly (6) comprises a driving motor (601), a connecting bracket (602) and an arc plate (603), wherein the driving motor (601) is fixedly mounted on the inner wall of the raw material storage box (1), the connecting bracket (602) is connected to the output shaft of the driving motor (601), and the arc plate (603) is arranged at one end of the connecting bracket (602); The automatic threshing and discharging mechanism (4) comprises a fixed bracket (401), an upper bracket (402), a lower bracket (403) and a discharging frame (404), wherein the fixed bracket (401) is welded to the top outer wall of the raw material storage box (1), the lower bracket (403) is installed on one side of the raw material storage box (1) through the fixed bracket (401), the upper bracket (402) is welded to the top of the lower bracket (403), and the discharging frame (404) is welded to the bottom of the lower bracket (403); The automatic threshing and discharging mechanism (4) further comprises an electric telescopic rod (409) and an air-filled seat (4010), wherein the electric telescopic rod (409) is fixedly mounted on one side of the lower bracket (403), and the air-filled seat (4010) is mounted on the telescopic end of the electric telescopic rod (409).
2. The deoxidizer high-efficiency granulator according to claim 1, Features: The number of the rotating segmented processing type automatic discharging components (3) is six, and the six rotating segmented processing type automatic discharging components (3) are evenly fixedly mounted on the rotating mounting seat (2) in a circular array with the center point of the rotating mounting seat (2) as the axis.
3. The deoxidizer high-efficiency granulator according to claim 1, Features: The automatic threshing and discharging mechanism (4) further comprises a fan (406); a discharging chute (405) is provided between the lower support (403) and the discharging frame (404); the fan (406) is mounted on one end of the discharging frame (404); and one end of the discharging frame (404) is connected to the collecting box (7).
4. The deoxidizer high-efficiency granulator according to claim 3, Features: The automatic threshing and discharging mechanism (4) further comprises an air pump (407) and an air jet belt (408); the air pump (407) is fixedly mounted on the top of the upper bracket (402); there are two air jet belts (408); the two air jet belts (408) are symmetrically arranged on the inner wall of the upper bracket (402); and the air jet belts (408) are connected to the air pump (407).
Citation Information
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